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Toxaphene: accumulation in the adrenal cortex and effect on ACTH-stimulated corticosteroid synthesis in the rat.

Uptake and distribution of [14C]toxaphene was studied in the adrenals of rats using whole-body autoradiography. An accumulation of radioactivity was seen in the adrenal cortex (zona fasciculata) 1-24 h after a single gavage of [14C]toxaphene (16 mg/kg b.w.). In in vitro studies toxaphene was found to inhibit ACTH-stimulated corticosterone synthesis in the cultured rat adrenocortical cells (IC50 2.8 X 10(-5) M). Moderate but significant inhibition (P less than 0.001) of ACTH-stimulated corticosterone synthesis was also observed in the adrenocortical cells isolated from rats after a prolonged exposure (5 weeks) to low levels (1.2 ppm) of toxaphene in feed. The results indicate a direct adrenotoxic effect of toxaphene.

Adrenal Cortex↗

[Effect of adrenal cortex hormones on the ultrastructure of rat dermal fibroblasts in postnatal ontogeny. Electron microscopy morphometric data].

The effects of hydrocortisone and acetate deoxycorticosterone on the composition of the fibroblast population and the changes in their ultrastructure during the derma development in ontogenesis were studied using the electron morphometry. Hydrocortisone was shown to decrease in the derma of young animals the number of fibroblasts, which actively produce collagen, and to increase the number of fibrocytes and degenerating cells. Hydrocortisone reduced both in young and adult animals the total extent of the rough endoplasmic reticulum membranes, the total area of the rough endoplasmic reticulum and Golgi complex cisternae at the fibroblast section, as well as the area of the cytoplasm. The introduction of acetate deoxycorticosterone increased insignificantly the number of fiblroblasts, which actively produce collagen, in the derma of 2 month old animals. Under its influence the ultrastructure of the fibroblasts changed reliably only at the later stages of ontogenesis. Both the corticosteroids changed the bulk ratios of various organelles in the fibroblast's cytoplasm.

Adrenal Cortex Hormones↗

Effects of trimethyltin on the mouse hippocampus and adrenal cortex.

The effects of trimethyltin (TMT) on the mouse adrenal histology and its relationship with neuropathology occurrence was studied. Young, male CD-1 mice were divided into three groups: group I, injected on 3 consecutive days with 1.0 mg TMT/kg body weight (b.w.); group II, injected on 2 consecutive days with 1.5 mg TMT/kg b.w.; and group III, injected with a single acute dose of 3.0 mg TMT/kg b.w. Control animals were injected with saline solution. The brain and adrenal glands were sampled for light-microscopic examination. Although all animals received the same total amount of TMT, pathological changes in the granule cells of the fascia dentate appeared to be group III greater than group II greater than group I, suggesting that acute exposures produced a more severe damage to the fascia dentate neurons. Likewise, the adrenal weights of the animals were group III greater than group II greater than group I greater than or equal to control. Significant proliferation and enlargement of the eosinophilic or the "X zone" were observed in the TMT-treated, particularly groups II and III, animals. The expansion of the eosinophilic cell layer (X zone) was accomplished at the expense of the cortical fasciculata cells. Transformation of fasciculata cells into eosinophilic cells could also be demonstrated. As the eosinophilic cells are known to be active in corticosterone production as seen in stress situations, the proliferation of these cells may reflect a feedback response to the hippocampal hyperexcitation.

Adrenal Cortex↗

Effects of adrenal cortex hormones on limbic structures: some experimental and clinical correlations related to depression.

Cushing's disorder and depression present overlapping although not identical psychological symptomatology. In turn, a subset of patients with affective disorders present with hypercortisolemia and disturbances, specifically disinhibition, of the hypothalamic hypophysio adrenal axis (HHAA). Memory disturbances, in particular, biasing toward negative contents, overlapping sleep abnormalities (marked reduction of stages 3 and 4) increased fatigue and loss of energy, attentional deficits and irritability, are just part of the common symptomatology presented by patients with both Cushing's disorder and depression. All of these behavioral manifestations are known to be affected by adrenal steroid hormones. There is consensus that hippocampal structures are a main target for adrenal steroid hormones; hence, these neural regions are some of the most likely mediators of the effects of corticoadrenal steroids on behavior. This paper proposes that an imbalance of adrenal steroids and their metabolites may play a fundamental role in the psychophysiopathology of Cushing's and depressive disorders. The imbalance of these hormones, especially at limbic sites, could distort mood and memory content affecting cognition based on recollection and present experiences. Reestablishing an adrenal balance could therefore be considered as a therapeutic aid in a subset of depressive disorders.

Adolescent↗